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Original Paper

Ensemble Assessment of Extreme Precipitation Risk under 1.5 and 2.0°C Warming Targets in the Yangtze River Basin

Xingguo MO1,2( )Shuxu YUE1,2,3Shi HU1 Suxia LIU1,2
Key Laboratory of Water Cycle and Related Land Surface Processes, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101
College of Sino-Danish Center, University of Chinese Academy of Sciences, Beijing 100049
National Center for Climate Change Strategy and International Cooperation, Beijing 100035
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Abstract

Changes in precipitation extremes and associated risks under the 1.5 and 2.0°C global warming targets in the Yangtze River basin (YRB) were assessed. The projections from 10 global climate models (GCMs) of the Coupled Model Intercomparison Project phase 6 (CMIP6) were bias-corrected and averaged with Bayesian and arithmetic mean methods, respectively. The results show that the Bayesian weights can reflect the performance of each GCM in capturing seasonal precipitation extremes. Thus, its multimodel ensemble projections noticeably improve the performance of the mean, interannual variability, and trends of precipitation extremes. The areal-mean risks of Rx5day (maximum consecutive 5-day precipitation) are projected to increase by ratios of 3.3 in summer, 2.9 in autumn, 2.2 in spring, and 1.9 in winter under the 1.5°C target. Spatially, the northwestern part of the YRB may experience the highest risk of increments in Rx5day extreme in summer and autumn. In response to an additional 0.5°C warming from 1.5 to 2.0°C, the risks of seasonal Rx5day extreme for all 20-, 50-, and 100-yr return periods are projected to increase respectively. The higher probabilities of extreme precipitation events under the warming targets may cause more hazardous flooding; therefore, new strategies and infrastructures for climate change and hydrological risk mitigation are imperative in the YRB.

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Journal of Meteorological Research
Pages 1167-1183

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Cite this article:
MO X, YUE S, HU S, et al. Ensemble Assessment of Extreme Precipitation Risk under 1.5 and 2.0°C Warming Targets in the Yangtze River Basin. Journal of Meteorological Research, 2024, 38(6): 1167-1183. https://doi.org/10.1007/s13351-024-3144-8

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Received: 24 March 2024
Published: 28 September 2024
© The Chinese Meteorological Society and Springer-Verlag Berlin Heidelberg 2024